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Affective Interaction with a Virtual Character Through an fNIRS Brain-Computer Interface

机译:通过fNIRS脑机接口与虚拟角色的情感互动

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Affective brain-computer interfaces (BCI) harness Neuroscience knowledge to develop affective interaction from first principles. In this article, we explore affective engagement with a virtual agent through Neurofeedback (NF). We report an experiment where subjects engage with a virtual agent by expressing positive attitudes towards her under a NF paradigm. We use for affective input the asymmetric activity in the dorsolateral prefrontal cortex (DL-PFC), which has been previously found to be related to the high-level affective-motivational dimension of approach/avoidance. The magnitude of left-asymmetric DL-PFC activity, measured using functional near infrared spectroscopy (fNIRS) and treated as a proxy for approach, is mapped onto a control mechanism for the virtual agent’s facial expressions, in which action units (AUs) are activated through a neural network. We carried out an experiment with 18 subjects, which demonstrated that subjects are able to successfully engage with the virtual agent by controlling their mental disposition through NF, and that they perceived the agent’s responses as realistic and consistent with their projected mental disposition. This interaction paradigm is particularly relevant in the case of affective BCI as it facilitates the volitional activation of specific areas normally not under conscious control. Overall, our contribution reconciles a model of affect derived from brain metabolic data with an ecologically valid, yet computationally controllable, virtual affective communication environment.
机译:情感脑机接口(BCI)利用神经科学知识从第一原理发展情感互动。在本文中,我们将通过Neurofeedback(NF)探索与虚拟代理的情感互动。我们报告了一个实验,其中受试者在NF范式下通过对虚拟代理表达积极态度与虚拟代理互动。对于情感输入,我们使用背侧前额叶皮层(DL-PFC)中的不对称活动,该活动先前已被发现与进近/避免的高级情感动机维度有关。使用功能近红外光谱(fNIRS)测量并视为方法的代理的左非对称DL-PFC活性的大小被映射到虚拟代理人面部表情的控制机制上,在该机制中激活了动作单位(AU)通过神经网络。我们对18名受试者进行了一项实验,证明受试者能够通过NF控制他们的心理处置,从而成功地与虚拟特工互动,并且他们认为代理的反应是现实的,并与他们的预期心理处置相一致。这种交互作用范式在情感BCI的情况下尤其重要,因为它可以促进通常不受意识控制的特定区域的自愿激活。总体而言,我们的贡献使来自脑代谢数据的情感模型与生态有效但可计算控制的虚拟情感交流环境保持一致。

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